Patent classifications
A61M1/82
System and method for reduced pressure charging
A reduced pressure treatment system includes a compressible chamber positionable beneath a foot of a user and being movable between an expanded position and a compressed position. The compressible chamber includes an inlet and an outlet. An inlet valve is in fluid communication with the inlet to prevent fluid within the compressible chamber from exiting the inlet, and an outlet valve is in fluid communication with the outlet to prevent fluid from entering the compressible chamber through the outlet. A biasing member is disposed within the compressible chamber to bias the compressible chamber toward the expanded position, and a manifold is positionable at a tissue site and in fluid communication with the inlet of the compressible chamber.
Implantable device for internal urinary control
The present invention relates to a method for implanting an implantable apparatus for obtaining urinary control and emptying of the urinary bladder, thereby preventing from or treating involuntary urinary retention. In general terms, the apparatus comprises an expandable member adapted to be implanted inside the urinary bladder of the patient for discharging urine, and a control device for controlling the volume of the expandable member. The control device is adapted to be connected to the expandable member through the wall of the urinary bladder.
HYDRAULIC PUMPING SYSTEM FOR EXPRESSION OF BREAST MILK
A hydraulic pumping system in accordance with embodiments comprises a breast interface operably coupled to an actuatable assembly by means of an actuatable assembly interface. The breast interface comprises a distal membrane coupled to a housing to form a fluid reservoir therebetween. The actuatable assembly interface comprises a proximal membrane. The distal and proximal membranes are fluidly coupled via a tube carrying a driving fluid. The actuatable assembly interface is configured to removably couple to the actuatable assembly, in order to operably couple the actuatable assembly to the breast interface. The actuatable assembly interface comprises a fluid shut off mechanism to reversibly shut off fluid communication between the breast interface and the actuatable assembly interface when the actuatable assembly interface is decoupled from the actuatable assembly.
Manually-actuated, reduced-pressure systems for treating wounds
A manually-actuated, constant reduced-pressure apparatus for use with a reduced-pressure system for treating tissue at a tissue site includes a flexible, collapsible member that is operable to move between a compressed position and an extended position. The collapsible member may be disposed between a carrier member and a slider member that move between a compressed position and an extended position. The carrier member and slider member are urged away from each other by a constant-force biasing member, e.g., a constant force coil spring. As the apparatus moves from the compressed position to the extended position, a constant reduced-pressure is generated and delivered to a reduced-pressure port. Methods of manufacturing a manually-actuated, constant reduced-pressure apparatus and methods of treating a tissue site are also provided.
Implantable drainage device
An implantable drainage device is provided. The device is adapted to move body fluid from one part of the body of a patient to another part of the body.
Implantable device for internal urinary control
The present invention relates to an implantable apparatus for obtaining urinary control and emptying of the urinary bladder, thereby preventing from or treating involuntary urinary retention. In general terms, the apparatus comprises an expandable member adapted to be implanted inside the urinary bladder of the patient for discharging urine, and a control device for controlling the volume of the expandable member. The control device is adapted to be connected to the expandable member through the wall of the urinary bladder.
NEGATIVE PRESSURE WOUND CLOSURE DEVICES AND METHODS
Systems, devices, and methods of the present application can accelerate and reduce medical complications associated with healing of non-planar wounds such as amputation wounds. The devices and methods utilize a collapsing structure and negative pressure to cause the shaped wound to preferentially close. The structure can accommodate movement over curved tissue surfaces, which can utilize scales or interleaved elements to provide efficient wound closure along arcuate paths. This structure can enable gradual closure from the deepest portion of the wound to the shallowest portion.
COUNTERBALANCED NASAL BULB ASPIRATOR
A nasal bulb aspirator that can be sized to fit the needs of infants through adults and is designed to ensure that the tip remains hygienically intact by a one-way valve and a counterbalance system that prevents the tip from touching surrounding surfaces, thereby limiting cross contamination from possibly resistant pathogens.
FLUID COLLECTION SYSTEM INCLUDING A COMPRESSIBLE SUCTION DEVICE AND RELATED METHODS
Examples relate to fluid collection systems and methods of use of the system. The fluid collection system may include a fluid collection device configured to receive fluid discharged from a user, a fluid collection container in fluid communication with the fluid collection device configured to collect the fluid and a suction device in fluid communication with the fluid collection device and the fluid collection container. The suction device is compressible and configured to draw fluid from the fluid collection device into the fluid collection container solely responsive to mechanical actuation of the suction device.
Manual breast pump
[Problem] To provide a manual breast pump which can be disassembled and assembled easily for cleaning purposes, and which can easily change a negative pressure during expression of milk which is generated by an operating section. [Means for Solving] It is provided an accommodating vessel 11 for storing breast milk, a breast pump main body 21, and a manual operating section 61 attached to the breast pump main body and deforming a negative pressure generating member 30 installed on the breast pump main body. The manual operating section 61 has a lever shape, and has an engagement structure 80 which engages with the engaging section 38 on the breast pump main body 21 side. The engagement structure 80 tilts down the extending section erected in the form of a pillar, the extending section being a part of the negative pressure generating member, and is selectively engaged with a plurality of engaging sections provided in the middle of the extending section upon erecting the extending section.